Blood Rheology and Coagulation Mechanisms

Displaying 1 - 3 of 3CSV
Anastasiadi, A. T., Arvaniti, V.-Z., Hudson, K. E., Kriebardis, A. G., Stathopoulos, C., D’Alessandro, A., Spitalnik, S. L., & Tzounakas, V. L. (2024). Exploring unconventional attributes of red blood cells and their potential applications in biomedicine. Protein & Cell, 15(5), 315–330. https://doi.org/10.1093/procel/pwae001
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Peltier, S., Marin, M., Dzieciatkowska, M., Dussiot, M., Georgeault, S., Gautier, E., Spitalnik, S., Buffet, P., D’Alessandro, A., & Amireault, P. (2023). OA3‐AM23‐MN‐13 | Morphologically altered Red Blood Cells that Accumulate During Storage Have Altered Proteostasis and Post‐transfusion Spleen Retention. Transfusion, 63(S5). Portico. https://doi.org/10.1111/trf.66_17554
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Shimano, K. A., Grace, R. F., Despotovic, J. M., Neufeld, E. J., Klaassen, R. J., Bennett, C. M., Ma, C., London, W. B., & Neunert, C. (2021). Phase 3 randomised trial of eltrombopag versus standard first-line pharmacological management for newly diagnosed immune thrombocytopaenia (ITP) in children: study protocol. BMJ Open, 11(8), e044885. https://doi.org/10.1136/bmjopen-2020-044885
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